Full-Time

Quality Assurance Manager

Uso

TerraPower

TerraPower

1,001-5,000 employees

Develops advanced nuclear reactors and isotopes

No salary listed

Fort Bridger, WY, USA

In Person

Up to 10% travel; on-site in Kemmerer, Wyoming.

Bachelor's

Category
QA & Testing (1)
Required Skills
Word/Pages/Docs
Excel/Numbers/Sheets
PowerPoint/Keynote/Slides

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Requirements
  • Bachelor’s degree in science, engineering, quality assurance, or a related technical field (or equivalent experience)
  • 8+ years of commercial nuclear power plant QA experience
  • 2+ years of previous supervisory or mentoring experience or equivalent people leadership experience is required
  • Demonstrated competency managing personnel
  • High level of knowledge of nuclear power plant systems and terminology
  • Experience with interpreting relevant nuclear information and standards in strict procedural and regulatory compliance
  • Working knowledge of Microsoft Word, Excel, and PowerPoint
  • Experience with smart procedures or other software-based procedure tools
  • Excellent technical writing and communication skills
  • Attention to detail and aspiration for NQA excellence
  • Self-starter who can develop innovative solutions with minimal supervision
  • The successful candidate will possess a high degree of trust and integrity, able to communicate openly, and display respect and a desire to foster teamwork
  • Understands how individual actions and decisions can positively and negatively affect the ability of the total organization to meet its requirements to regulatory agencies and the public
  • Adapts well to emergent changes due to changes in plant design, plant procedures, schedule changes, or other challenges associated with the design, construction, and commissioning of a new nuclear power plant.
  • This position is subject to qualification requirements in accordance with ANSI/ANS 3.1. Candidates must meet the minimum education and experience criteria applicable to the role, including relevant nuclear industry experience where required. Verification of data will be part of the hiring process.
Responsibilities
  • Manages department personnel to ensure all training, qualification, and certification requirements are met, provide direction in their work assignments, and ensure that the department maintains readiness to support plant activities.
  • Provides managerial oversight of work product from department personnel, ensuring all quality-related activities and records satisfy program and regulatory requirements.
  • Coordinates with other departments for cross-discipline procedure reviews and database implementation.
  • Uses industry practices to develop high-quality procedures which minimize the risk of NQA events.
  • Engages with industry peers, third-party vendors, NEI, and other organizations to find innovative methods & technologies for implementing the Quality Assurance Program.
  • Ensures USO quality implementing procedures comply with program and company standards, NRC regulations, INPO accreditation criteria, and other codes, standards, and regulatory requirements.
  • Provides regular training and mentoring to company personnel on the processes and standards associated with the license holder’s NQA processes and procedures.
  • Incorporates information gained from INPO Significant Operating Experience Reports, NRC Circulars, Bulletins, and Information Notices, plant design changes, plant procedure changes and revisions, and new regulations, and training effectiveness reports into the NQA procedures, as applicable
  • Ensure the collection and maintenance of auditable quality documents and records is performed.
  • Schedules and ensures internal and supplier audits are completed to support the QA program.
  • Work with the Senior Manager, Quality Assurance to evaluate and improve the QA program and QA activities of the KPS.

TerraPower develops advanced nuclear technologies to provide carbon-free energy and medical isotopes. The company works on next-generation reactors such as the Traveling Wave Reactor, Molten Chloride Fast Reactor, and sodium fast reactor. Its products generate electricity through fission in these next-gen designs, and the medical isotope work involves extracting isotopes like Actinium-225 for cancer treatment via partnerships (e.g., with Radiopharm). TerraPower generates revenue through technology licensing, partnerships, and supply agreements, serving utilities, government agencies, and medical institutions. The company differentiates itself by pursuing a diverse portfolio of reactor technologies and by combining power generation with medical isotope applications, complemented by collaborations and licensing to bring technologies to market. Its goal is to provide scalable, carbon-free energy while addressing medical needs through isotope production and new reactor deployments.

Company Size

1,001-5,000

Company Stage

Late Stage VC

Total Funding

$1.6B

Headquarters

Bellevue, Washington

Founded

2008

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Simplify Jobs

Simplify's Take

What believers are saying

  • On June 16, 2026, TerraPower started UK GDA Step 1 and opened TerraPower UK.
  • On August 14, 2026, TerraPower signed HDEC and SK Innovation agreements for Natrium deployment.
  • Philadelphia’s May 6, 2026 groundbreaking advances TerraPower Isotopes toward 225 jobs and 2029 output.

What critics are saying

  • Kemmerer’s 2030 commercial target depends on first-of-a-kind construction execution and vendor quality control.
  • TerraPower still faces public-safety scrutiny under NRC, UK GDA, and OCAHO proceedings in 2026.
  • A Kemmerer cost overrun or thermal-storage failure destroys Natrium credibility and stalls fleet financing.

What makes TerraPower unique

  • TerraPower’s Natrium pairs a 345MW sodium reactor with molten-salt storage, unique on August 2026.
  • Bill Gates-backed TerraPower won NRC construction approval on March 9, 2026, first non-light-water permit.
  • TerraPower Isotopes’ Philadelphia plant targets twentyfold Ac-225 output, diversifying beyond power markets.

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Benefits

Health Insurance

Vision Insurance

Dental Insurance

Life Insurance

Disability Insurance

Parental Leave

401(k) Retirement Plan

Paid Vacation

Paid Holidays

Relocation Assistance

Professional Development Budget

Conference Attendance Budget

Growth & Insights and Company News

Headcount

6 month growth

0%

1 year growth

0%

2 year growth

0%
PR Newswire
Aug 14th, 2026
TerraPower accelerates natrium(r) reactor deployment following landmark meetings with korean leaders.

TerraPower accelerates natrium(r) reactor deployment following landmark meetings with korean leaders. Aug 14, 2026, 06:08 ET New agreements and strong bilateral relationships advance long-term collaborations for future commercial-scale Natrium plants BELLEVUE, Wash., Aug. 14, 2026 /PRNewswire/ - TerraPower, a nuclear innovation company, today announced two key agreements, one with Hyundai Engineering & Construction (HDEC) and one with SK Innovation, to develop and commercialize the Natrium technology across the United States, Korea and select international markets, during a visit to Korea by TerraPower leadership. TerraPower founder and Chairman Bill Gates, along with TerraPower President and CEO Chris Levesque met with Prime Minister Han Seong-sook and leaders from the Export-Import Bank of Korea, HD Hyundai, HDEC and SK Innovation during a packed day in Seoul. Following the day of meetings in Seoul, TerraPower announced a framework agreement with HDEC to support the commercial deployment of Natrium reactors. Under the agreement, TerraPower selected HDEC as its engineering, procurement and construction (EPC) contractor to build up to eight of its future Natrium reactors with completion, price and performance guarantees, intended to facilitate conventional commercial financing of the Natrium reactor fleet. The collaboration will accelerate the commercial deployment of Natrium reactors by streamlining costs, improving design and construction efficiencies and strengthening global supply chains to deploy a fleet of Natrium plants across the United States and in select international markets. Separately, TerraPower and SK Innovation announced a term sheet agreement to advance their intent to develop Korea's first commercial Natrium plant along with plans to expand internationally. The two companies plan to explore opportunities to collaborate on engineering and digital innovation solutions, including digital twin technology and artificial intelligence, building on TerraPower's existing leadership in these tools to optimize operations and maintenance. "Today marks a pivotal moment for TerraPower as we embark on a new chapter of international collaboration with Korea's leading organizations," said Chris Levesque, president and CEO of TerraPower. "Combining TerraPower's innovative advanced nuclear technology with Korea's nuclear construction and operational expertise will strengthen our global cooperation and accelerate the deployment of a Natrium fleet that will transform the world's energy landscape." TerraPower will now begin work under these agreements to accelerate the deployment of next-generation nuclear technologies in the United States, Korea and around the world, reinforcing a pathway for reliable, scalable and economically competitive advanced nuclear power. About the Natrium Technology The Natrium technology is the first mover in the advanced reactor sector and is well positioned to support rapidly increasing energy demand. The Natrium plant design features a 345 MW sodium-cooled fast reactor with a patented molten salt-based energy storage system. The storage technology can boost the system's output to 500 MW of power when needed as it is designed to keep base output steady, ensuring constant reliability, and can quickly ramp up when demand peaks - it is the only advanced reactor design with this unique feature. The first Natrium plant is being developed through the U.S. Department of Energy's Advanced Reactor Demonstration Program (ARDP), a public-private partnership. That project is expected to be completed in 2030 and will be the first utility-scale advanced nuclear power plant in the United States. TerraPower is rapidly commercializing the Natrium technology, which includes an agreement with Meta for up to eight Natrium plants by 2035. About TerraPower TerraPower is a leading nuclear innovation company that strives to improve the world through nuclear energy and science. Since it was founded by Bill Gates and a group of like-minded visionaries, TerraPower has emerged as an incubator and developer of ideas and technologies that offer energy independence, environmental sustainability, medical advancement and other cutting-edge opportunities. It accepts and tackles some of the world's most difficult challenges. Behind each of its innovations and programs, TerraPower actively works to bring together the strengths and experiences of the world's public and private sectors to answer pressing global needs. Learn more at terrapower.com. Press contact SOURCE TerraPower

WOWK-TV
Aug 14th, 2026
TerraPower accelerates natrium(r) reactor deployment following landmark meetings with korean leaders.

TerraPower accelerates natrium(r) reactor deployment following landmark meetings with korean leaders. Aug 14, 2026, 6:08 AM ET New agreements and strong bilateral relationships advance long-term collaborations for future commercial-scale Natrium plants BELLEVUE, Wash., Aug. 14, 2026 /PRNewswire/ - TerraPower, a nuclear innovation company, today announced two key agreements, one with Hyundai Engineering & Construction (HDEC) and one with SK Innovation, to develop and commercialize the Natrium technology across the United States, Korea and select international markets, during a visit to Korea by TerraPower leadership. TerraPower founder and Chairman Bill Gates, along with TerraPower President and CEO Chris Levesque met with Prime Minister Han Seong-sook and leaders from the Export-Import Bank of Korea, HD Hyundai, HDEC and SK Innovation during a packed day in Seoul. Following the day of meetings in Seoul, TerraPower announced a framework agreement with HDEC to support the commercial deployment of Natrium reactors. Under the agreement, TerraPower selected HDEC as its engineering, procurement and construction (EPC) contractor to build up to eight of its future Natrium reactors with completion, price and performance guarantees, intended to facilitate conventional commercial financing of the Natrium reactor fleet. The collaboration will accelerate the commercial deployment of Natrium reactors by streamlining costs, improving design and construction efficiencies and strengthening global supply chains to deploy a fleet of Natrium plants across the United States and in select international markets. Separately, TerraPower and SK Innovation announced a term sheet agreement to advance their intent to develop Korea's first commercial Natrium plant along with plans to expand internationally. The two companies plan to explore opportunities to collaborate on engineering and digital innovation solutions, including digital twin technology and artificial intelligence, building on TerraPower's existing leadership in these tools to optimize operations and maintenance. "Today marks a pivotal moment for TerraPower as we embark on a new chapter of international collaboration with Korea's leading organizations," said Chris Levesque, president and CEO of TerraPower. "Combining TerraPower's innovative advanced nuclear technology with Korea's nuclear construction and operational expertise will strengthen our global cooperation and accelerate the deployment of a Natrium fleet that will transform the world's energy landscape." TerraPower will now begin work under these agreements to accelerate the deployment of next-generation nuclear technologies in the United States, Korea and around the world, reinforcing a pathway for reliable, scalable and economically competitive advanced nuclear power. About the Natrium Technology The Natrium technology is the first mover in the advanced reactor sector and is well positioned to support rapidly increasing energy demand. The Natrium plant design features a 345 MW sodium-cooled fast reactor with a patented molten salt-based energy storage system. The storage technology can boost the system's output to 500 MW of power when needed as it is designed to keep base output steady, ensuring constant reliability, and can quickly ramp up when demand peaks - it is the only advanced reactor design with this unique feature. The first Natrium plant is being developed through the U.S. Department of Energy's Advanced Reactor Demonstration Program (ARDP), a public-private partnership. That project is expected to be completed in 2030 and will be the first utility-scale advanced nuclear power plant in the United States. TerraPower is rapidly commercializing the Natrium technology, which includes an agreement with Meta for up to eight Natrium plants by 2035. About TerraPower TerraPower is a leading nuclear innovation company that strives to improve the world through nuclear energy and science. Since it was founded by Bill Gates and a group of like-minded visionaries, TerraPower has emerged as an incubator and developer of ideas and technologies that offer energy independence, environmental sustainability, medical advancement and other cutting-edge opportunities. It accepts and tackles some of the world's most difficult challenges. Behind each of its innovations and programs, TerraPower actively works to bring together the strengths and experiences of the world's public and private sectors to answer pressing global needs. Learn more at terrapower.com. Press contact SOURCE TerraPower NOTE: This content is not written by or endorsed by "WOWK", its advertisers, or Nexstar Media Inc.

DataM Intelligence
Jul 16th, 2026
From refinery ruins to life sciences powerhouse: Philadelphia's Bellwether District attracts $450M biotech investment.

From refinery ruins to life sciences powerhouse: Philadelphia's Bellwether District attracts $450M biotech investment. Philadelphia's former oil refinery site is undergoing a major transformation into a next-generation life sciences and advanced manufacturing ecosystem. TerraPower Isotopes, backed by Bill Gates-founded TerraPower, plans to invest $450 million in a new medical isotope production facility, signaling growing momentum for brownfield redevelopment and biotech infrastructure investment in the United States. Editorial Review: Akshay Reddy Published on: Jul 16, 2026 Nuclear Medicine Radioisotopes Market Size, Share, Industry, Forecast and outlook (2026-2033) The transformation of legacy industrial assets into innovation-driven economic engines is accelerating across the United States. One of the most significant examples is unfolding in Philadelphia, where the former Philadelphia Energy Solutions (PES) refinery site is being redeveloped into a large-scale life sciences and advanced manufacturing district. The 1,300 acre property, now known as the Bellwether District, was once home to the largest oil refinery on the U.S. East Coast. Following a catastrophic refinery explosion in 2019 that led to the facility's closure and bankruptcy, developers initiated one of the nation's most ambitious brownfield redevelopment projects. A major milestone in the site's evolution has emerged with TerraPower Isotopes' commitment to invest approximately $450 million in a state-of-the-art manufacturing facility dedicated to producing medical isotopes used in advanced cancer therapies. The facility is expected to serve the growing global demand for precision oncology treatments and radiopharmaceutical innovation. Strategic shift from fossil fuels to biotechnology. The Bellwether District represents a broader shift occurring across industrial economies, where underutilized energy and manufacturing assets are being repurposed to support high-growth sectors such as biotechnology, life sciences, clean technology, and advanced manufacturing. Developers have spent years dismantling aging refinery infrastructure, removing hundreds of storage tanks, decommissioning pipelines, and remediating environmental risks to prepare the site for modern industrial tenants. These efforts have significantly improved the site's attractiveness to technology-driven manufacturers and institutional investors. Industry analysts note that large-scale redevelopment projects offer a unique opportunity to combine sustainability objectives with economic growth strategies. Instead of developing greenfield locations, companies can leverage existing transportation networks, utility infrastructure, and workforce availability while supporting environmental restoration goals. Explore the Nuclear Medicine Radioisotopes Market Report Discover exclusive insights into Nuclear Medicine Radioisotopes Market growth, emerging radiopharmaceutical innovations, key players, regional opportunities, and future demand trends driving the global nuclear medicine radioisotopes industry through 2033. Request a Nuclear Medicine Radioisotopes Market Sample Report. Why life sciences companies are choosing Philadelphia. Philadelphia continues to strengthen its position as one of North America's leading life sciences ecosystems. The region benefits from a deep talent pool, world-class research institutions, major healthcare systems, and established pharmaceutical manufacturing capabilities. These advantages have helped attract significant biotech investments despite broader industry challenges. For TerraPower Isotopes, access to specialized scientific talent, logistics infrastructure, and proximity to research organizations played a critical role in site selection. The project is expected to create hundreds of high-skilled jobs while supporting long-term innovation within the regional healthcare and biotechnology sectors. A blueprint for future industrial redevelopment. The Bellwether District redevelopment illustrates how former industrial sites can be repositioned as innovation campuses capable of supporting next-generation industries. Plans for the district include millions of square feet of manufacturing, research, logistics, and commercial space, with projections indicating substantial economic impact through job creation and tax revenue generation over the coming decade. As governments and private investors increasingly prioritize resilient supply chains, domestic pharmaceutical manufacturing, and sustainable infrastructure development, projects like Bellwether may become a model for future brownfield-to-biotech transformations worldwide. What is the Bellwether District in Philadelphia? The Bellwether District is a 1,300 acre redevelopment project built on the former Philadelphia Energy Solutions rfinery site. Following the refinery's closure after a 2019 explosion, the property is being transformed into a life sciences, advanced manufacturing, and innovation hub. The project gained significant momentum after TerraPower Isotopes announced a $450 million investment to establish a medical isotope manufacturing facility supporting cancer treatment development. News source: https://www.wsj.com/articles/burned-out-philadelphia-refinery-finds-new-life-as-life-sciences-hub-10fbbe26 Found it interesting? Email: [email protected] US: +1 877 441 4866 DataM Intelligence has 10,000+ research reports serving across 100+ countries

Savills
Jul 9th, 2026
Philadelphia Q2 2026 life sciences market report.

Philadelphia Q2 2026 life sciences market report. 09 July 2026 Market highlights. * Overall vacancy increased by 260 basis points year over year to 7.3% from 4.7%. However, Philadelphia continues to post one of the lowest vacancy rates among the nation's leading life sciences markets. * Construction began on TerraPower Isotopes' 250,000-square-foot manufacturing facility at The Bellwether District, establishing the first life sciences tenant at the former Philadelphia Energy Solutions refinery redevelopment. * The Pew Charitable Trusts awarded $2.5 million to two Philadelphia organizations, including a $1.5 million grant to expand life sciences and healthcare workforce development across Southeastern Pennsylvania.

Predifi
Jun 23rd, 2026
TerraPower's $3B nuclear reactor project in UK: A European game changer.

TerraPower's $3B nuclear reactor project in UK: A European game changer. Predifi Marketing Agent AI-Powered Market Intelligence Technology Key points. * TerraPower, backed by Bill Gates, selects a UK site for a $3 billion, 345MW nuclear reactor. * The project aims to support UK decarbonization goals and create regional jobs. * Expected to serve as a model for future reactor installations across Europe. * Potential regulatory and public opposition poses underpriced risk. * Watch for UK government approvals and public sentiment shifts. In a bold move towards European nuclear energy expansion, TerraPower, the U.S. advanced nuclear company backed by Bill Gates, has chosen a site in north-east England for its first European next-generation nuclear reactor. This project, estimated to cost several billion pounds, is set to deliver a reactor with an electric capacity of 345 megawatts. The selection of this site, a former coal-fired power station, underscores a significant shift towards advanced nuclear technologies in the region. The stakes are high. This project is not just a step towards decarbonization but also a strategic move to enhance energy security in Europe. With the UK Department for Energy Security and Net Zero offering its support, and British energy utilities partnering in the venture, the project is poised to create a ripple effect across the continent. It is a testament to the growing global demand for clean energy solutions and the pivotal role advanced nuclear technology can play in meeting these needs. TerraPower, the U.S. advanced nuclear company founded by Bill Gates, has announced the selection of a site in north-east England for its first European sodium-cooled fast reactor and molten-salt energy storage project. The chosen location is a former coal-fired power station, now set to host a reactor with an electric capacity of approximately 345 megawatts. The total investment for this project is estimated to be in the several-billion-pound range. This initiative is developed in partnership with British energy utility companies and is supported by the UK government's Department for Energy Security and Net Zero. The project is expected to contribute significantly to the UK's decarbonization targets and is anticipated to create jobs in the region. TerraPower envisions this project as a template for exporting its reactor technology across Europe, potentially influencing energy policies and investment strategies in the region. The root cause of this development is the global push for decarbonization and enhanced energy security. TerraPower, recognizing the growing demand for clean energy solutions, seeks to expand its advanced nuclear technology internationally. This move is part of a causal chain that begins with the identification of the need for clean energy, followed by TerraPower's strategic decision to enter the European market, and culminating in the selection of a site in the UK. This project is a classic example of Keynesian multiplier dynamics, where initial investment in infrastructure leads to increased economic activity and job creation. However, an underpriced risk in this scenario is the potential for regulatory and public opposition to advanced nuclear projects in Europe, which could hinder the project's progress and broader adoption of similar technologies. The announcement of TerraPower's project is expected to trigger immediate repricing in the stocks of its partners and British energy utilities. This initial movement will likely be followed by shifts in European energy sector ETFs and bonds as investors reassess the region's nuclear energy landscape. The transmission mechanism here is straightforward: the project signals a significant investment in advanced nuclear technology, which could lead to a reevaluation of risk and return profiles in the European energy sector. Moreover, this development could spur cross-asset spillover effects, influencing not just equity and bond markets but also commodities like uranium, given the increased demand for nuclear fuel. The European nuclear energy expansion is likely to attract attention from investors and policymakers alike, leading to a recalibration of strategies in the energy sector. The success of TerraPower's project hinges on several key factors, including UK government approvals, public sentiment, and the project's adherence to environmental and safety standards. Investors and market participants should watch for updates on these fronts, as they will be critical in determining the project's trajectory and its impact on the European energy market. The single most important question remaining is whether this project will serve as a catalyst for broader adoption of advanced nuclear technologies in Europe, potentially reshaping the continent's energy landscape. Prediction markets related to European nuclear energy expansion, advanced nuclear technology adoption, and UK energy policy will show the most sensitivity to this development. The timeline for significant market movements will depend on project milestones, regulatory approvals, and public sentiment shifts. Major impact areas. * European nuclear energy ETFs85% * Uranium commodities72% * British energy utility stocks68% Predifi is an on-chain prediction market platform. Join the waitlist #technology #prediction-markets #market-analysis #terrapower #nuclear-energy #decarbonization #energy-security